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-rw-r--r--drivers/gpu/nvgpu/gm206/hw_mc_gm206.h281
1 files changed, 0 insertions, 281 deletions
diff --git a/drivers/gpu/nvgpu/gm206/hw_mc_gm206.h b/drivers/gpu/nvgpu/gm206/hw_mc_gm206.h
deleted file mode 100644
index afbf556f..00000000
--- a/drivers/gpu/nvgpu/gm206/hw_mc_gm206.h
+++ /dev/null
@@ -1,281 +0,0 @@
1/*
2 * Copyright (c) 2016, NVIDIA CORPORATION. All rights reserved.
3 *
4 * This program is free software; you can redistribute it and/or modify it
5 * under the terms and conditions of the GNU General Public License,
6 * version 2, as published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope it will be useful, but WITHOUT
9 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
11 * more details.
12 *
13 * You should have received a copy of the GNU General Public License
14 * along with this program. If not, see <http://www.gnu.org/licenses/>.
15 */
16/*
17 * Function naming determines intended use:
18 *
19 * <x>_r(void) : Returns the offset for register <x>.
20 *
21 * <x>_o(void) : Returns the offset for element <x>.
22 *
23 * <x>_w(void) : Returns the word offset for word (4 byte) element <x>.
24 *
25 * <x>_<y>_s(void) : Returns size of field <y> of register <x> in bits.
26 *
27 * <x>_<y>_f(u32 v) : Returns a value based on 'v' which has been shifted
28 * and masked to place it at field <y> of register <x>. This value
29 * can be |'d with others to produce a full register value for
30 * register <x>.
31 *
32 * <x>_<y>_m(void) : Returns a mask for field <y> of register <x>. This
33 * value can be ~'d and then &'d to clear the value of field <y> for
34 * register <x>.
35 *
36 * <x>_<y>_<z>_f(void) : Returns the constant value <z> after being shifted
37 * to place it at field <y> of register <x>. This value can be |'d
38 * with others to produce a full register value for <x>.
39 *
40 * <x>_<y>_v(u32 r) : Returns the value of field <y> from a full register
41 * <x> value 'r' after being shifted to place its LSB at bit 0.
42 * This value is suitable for direct comparison with other unshifted
43 * values appropriate for use in field <y> of register <x>.
44 *
45 * <x>_<y>_<z>_v(void) : Returns the constant value for <z> defined for
46 * field <y> of register <x>. This value is suitable for direct
47 * comparison with unshifted values appropriate for use in field <y>
48 * of register <x>.
49 */
50#ifndef _hw_mc_gm206_h_
51#define _hw_mc_gm206_h_
52
53static inline u32 mc_boot_0_r(void)
54{
55 return 0x00000000;
56}
57static inline u32 mc_boot_0_architecture_v(u32 r)
58{
59 return (r >> 24) & 0x1f;
60}
61static inline u32 mc_boot_0_implementation_v(u32 r)
62{
63 return (r >> 20) & 0xf;
64}
65static inline u32 mc_boot_0_major_revision_v(u32 r)
66{
67 return (r >> 4) & 0xf;
68}
69static inline u32 mc_boot_0_minor_revision_v(u32 r)
70{
71 return (r >> 0) & 0xf;
72}
73static inline u32 mc_intr_r(u32 i)
74{
75 return 0x00000100 + i*4;
76}
77static inline u32 mc_intr_pfifo_pending_f(void)
78{
79 return 0x100;
80}
81static inline u32 mc_intr_pmu_pending_f(void)
82{
83 return 0x1000000;
84}
85static inline u32 mc_intr_ltc_pending_f(void)
86{
87 return 0x2000000;
88}
89static inline u32 mc_intr_priv_ring_pending_f(void)
90{
91 return 0x40000000;
92}
93static inline u32 mc_intr_pbus_pending_f(void)
94{
95 return 0x10000000;
96}
97static inline u32 mc_intr_mask_0_r(void)
98{
99 return 0x00000640;
100}
101static inline u32 mc_intr_mask_0_pmu_enabled_f(void)
102{
103 return 0x1000000;
104}
105static inline u32 mc_intr_en_0_r(void)
106{
107 return 0x00000140;
108}
109static inline u32 mc_intr_en_0_inta_disabled_f(void)
110{
111 return 0x0;
112}
113static inline u32 mc_intr_en_0_inta_hardware_f(void)
114{
115 return 0x1;
116}
117static inline u32 mc_intr_mask_1_r(void)
118{
119 return 0x00000644;
120}
121static inline u32 mc_intr_mask_1_pmu_s(void)
122{
123 return 1;
124}
125static inline u32 mc_intr_mask_1_pmu_f(u32 v)
126{
127 return (v & 0x1) << 24;
128}
129static inline u32 mc_intr_mask_1_pmu_m(void)
130{
131 return 0x1 << 24;
132}
133static inline u32 mc_intr_mask_1_pmu_v(u32 r)
134{
135 return (r >> 24) & 0x1;
136}
137static inline u32 mc_intr_mask_1_pmu_enabled_f(void)
138{
139 return 0x1000000;
140}
141static inline u32 mc_intr_en_1_r(void)
142{
143 return 0x00000144;
144}
145static inline u32 mc_intr_en_1_inta_disabled_f(void)
146{
147 return 0x0;
148}
149static inline u32 mc_intr_en_1_inta_hardware_f(void)
150{
151 return 0x1;
152}
153static inline u32 mc_enable_r(void)
154{
155 return 0x00000200;
156}
157static inline u32 mc_enable_xbar_enabled_f(void)
158{
159 return 0x4;
160}
161static inline u32 mc_enable_l2_enabled_f(void)
162{
163 return 0x8;
164}
165static inline u32 mc_enable_pmedia_s(void)
166{
167 return 1;
168}
169static inline u32 mc_enable_pmedia_f(u32 v)
170{
171 return (v & 0x1) << 4;
172}
173static inline u32 mc_enable_pmedia_m(void)
174{
175 return 0x1 << 4;
176}
177static inline u32 mc_enable_pmedia_v(u32 r)
178{
179 return (r >> 4) & 0x1;
180}
181static inline u32 mc_enable_priv_ring_enabled_f(void)
182{
183 return 0x20;
184}
185static inline u32 mc_enable_ce0_m(void)
186{
187 return 0x1 << 6;
188}
189static inline u32 mc_enable_pfifo_enabled_f(void)
190{
191 return 0x100;
192}
193static inline u32 mc_enable_pgraph_enabled_f(void)
194{
195 return 0x1000;
196}
197static inline u32 mc_enable_pwr_v(u32 r)
198{
199 return (r >> 13) & 0x1;
200}
201static inline u32 mc_enable_pwr_disabled_v(void)
202{
203 return 0x00000000;
204}
205static inline u32 mc_enable_pwr_enabled_f(void)
206{
207 return 0x2000;
208}
209static inline u32 mc_enable_pfb_enabled_f(void)
210{
211 return 0x100000;
212}
213static inline u32 mc_enable_ce2_m(void)
214{
215 return 0x1 << 21;
216}
217static inline u32 mc_enable_ce2_enabled_f(void)
218{
219 return 0x200000;
220}
221static inline u32 mc_enable_blg_enabled_f(void)
222{
223 return 0x8000000;
224}
225static inline u32 mc_enable_perfmon_enabled_f(void)
226{
227 return 0x10000000;
228}
229static inline u32 mc_enable_hub_enabled_f(void)
230{
231 return 0x20000000;
232}
233static inline u32 mc_intr_ltc_r(void)
234{
235 return 0x0000017c;
236}
237static inline u32 mc_enable_pb_r(void)
238{
239 return 0x00000204;
240}
241static inline u32 mc_enable_pb_0_s(void)
242{
243 return 1;
244}
245static inline u32 mc_enable_pb_0_f(u32 v)
246{
247 return (v & 0x1) << 0;
248}
249static inline u32 mc_enable_pb_0_m(void)
250{
251 return 0x1 << 0;
252}
253static inline u32 mc_enable_pb_0_v(u32 r)
254{
255 return (r >> 0) & 0x1;
256}
257static inline u32 mc_enable_pb_0_enabled_v(void)
258{
259 return 0x00000001;
260}
261static inline u32 mc_enable_pb_sel_f(u32 v, u32 i)
262{
263 return (v & 0x1) << (0 + i*1);
264}
265static inline u32 mc_elpg_enable_r(void)
266{
267 return 0x0000020c;
268}
269static inline u32 mc_elpg_enable_xbar_enabled_f(void)
270{
271 return 0x4;
272}
273static inline u32 mc_elpg_enable_pfb_enabled_f(void)
274{
275 return 0x100000;
276}
277static inline u32 mc_elpg_enable_hub_enabled_f(void)
278{
279 return 0x20000000;
280}
281#endif